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木瓜几丁质酶的X射线结构揭示了糖基水解酶家族19几丁质酶的底物结合模式。

X-ray structure of papaya chitinase reveals the substrate binding mode of glycosyl hydrolase family 19 chitinases.

作者信息

Huet Joëlle, Rucktooa Prakash, Clantin Bernard, Azarkan Mohamed, Looze Yvan, Villeret Vincent, Wintjens René

机构信息

Service de Chimie Générale (CP: 206/4), Institut de Pharmacie, Université Libre de Bruxelles (ULB), Campus de la Plaine, Boulevard du Triomphe, B-1050 Brussels, Belgium.

出版信息

Biochemistry. 2008 Aug 12;47(32):8283-91. doi: 10.1021/bi800655u. Epub 2008 Jul 18.

Abstract

The crystal structure of a chitinase from Carica papaya has been solved by the molecular replacement method and is reported to a resolution of 1.5 A. This enzyme belongs to family 19 of the glycosyl hydrolases. Crystals have been obtained in the presence of N-acetyl- d-glucosamine (GlcNAc) in the crystallization solution and two well-defined GlcNAc molecules have been identified in the catalytic cleft of the enzyme, at subsites -2 and +1. These GlcNAc moieties bind to the protein via an extensive network of interactions which also involves many hydrogen bonds mediated by water molecules, underlying their role in the catalytic mechanism. A complex of the enzyme with a tetra-GlcNAc molecule has been elaborated, using the experimental interactions observed for the bound GlcNAc saccharides. This model allows to define four major substrate interacting regions in the enzyme, comprising residues located around the catalytic Glu67 (His66 and Thr69), the short segment E89-R90 containing the second catalytic residue Glu89, the region 120-124 (residues Ser120, Trp121, Tyr123, and Asn124), and the alpha-helical segment 198-202 (residues Ile198, Asn199, Gly201, and Leu202). Water molecules from the crystal structure were introduced during the modeling procedure, allowing to pinpoint several additional residues involved in ligand binding that were not previously reported in studies of poly-GlcNAc/family 19 chitinase complexes. This work underlines the role played by water-mediated hydrogen bonding in substrate binding as well as in the catalytic mechanism of the GH family 19 chitinases. Finally, a new sequence motif for family 19 chitinases has been identified between residues Tyr111 and Tyr125.

摘要

番木瓜几丁质酶的晶体结构已通过分子置换法解析,分辨率为1.5埃。该酶属于糖基水解酶第19家族。在结晶溶液中存在N-乙酰-D-葡萄糖胺(GlcNAc)的情况下获得了晶体,并且在酶的催化裂隙中,在亚位点-2和+1处鉴定出两个明确的GlcNAc分子。这些GlcNAc部分通过广泛的相互作用网络与蛋白质结合,其中还涉及许多由水分子介导的氢键,这表明它们在催化机制中的作用。利用对结合的GlcNAc糖类观察到的实验性相互作用,构建了该酶与四聚体GlcNAc分子的复合物。该模型可以确定酶中的四个主要底物相互作用区域,包括位于催化性Glu67周围的残基(His66和Thr69)、包含第二个催化残基Glu89的短片段E89-R90、区域120-124(残基Ser120、Trp121、Tyr123和Asn124)以及α-螺旋片段198-202(残基Ile198、Asn199、Gly201和Leu202)。在建模过程中引入了晶体结构中的水分子,从而能够确定几个先前在多聚-GlcNAc/第19家族几丁质酶复合物研究中未报道的参与配体结合的额外残基。这项工作强调了水介导的氢键在底物结合以及GH第19家族几丁质酶催化机制中的作用。最后,在残基Tyr111和Tyr125之间鉴定出了第19家族几丁质酶的一个新序列基序。

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